With the explosive growth of mobile traffic demand, densely deployed small cells underlying macrocells have great potential for 5G and beyond wireless networks. In this paper, we consider the problem of supporting traffic flows with diverse QoS requirements by exploiting three high frequency bands, i.e., the 28GHz band, the E-band, and the Terahertz (THz) band. The cooperation of the three bands is helpful for maximizing the number of flows with their QoS requirements satisfied. To solve the formulated nonlinear integer programming problem, we propose a triple-band scheduling scheme which can select the optimum scheduling band for each flow among three different frequency bands. The proposed scheme also efficiently utilizes the resource to schedule flow transmissions in time slots. Extensive simulations demonstrate the superior performance of the proposed scheme over three baseline schemes with respect to the number of completed flows and the system throughput.
翻译:随着移动交通需求的爆炸性增长,密集部署的小型大型电池底部小细胞对于5G和无线网络之外具有巨大的潜力。在本文件中,我们考虑了通过利用三个高频波段,即28GHz波段、E-波段和Terahertz(Thz)波段,支持具有不同QOS要求的交通流量的问题。三个波段的合作有助于最大限度地增加流量数量,满足其QOS要求。为了解决已拟订的非线性整数编程问题,我们提议了一个三带排程计划,为三个不同频段之间的每次流量选择最佳的排期段。拟议的计划还有效地利用资源在时间段安排流量。广泛的模拟表明,拟议的计划在三个基线计划上在完成流量和系统吞吐量方面表现优异。